377
Views
75
CrossRef citations to date
0
Altmetric
Original Articles

Genotypic Variation in Shoot Cadmium Concentration in Rice and Soybean in Soils with Different Levels of Cadmium Contamination

, , , &
Pages 101-108 | Received 15 Jul 2004, Accepted 26 Nov 2004, Published online: 17 Dec 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (11)

Satoru Ishikawa. (2020) Mechanisms of cadmium accumulation in rice grains and molecular breeding for its reduction. Soil Science and Plant Nutrition 66:1, pages 28-33.
Read now
Ryuichi Takahashi, Masashi Ito, Kazunao Katou, Kensuke Sato, Shinpei Nakagawa, Kouichi Tezuka, Hiromori Akagi & Tomohiko Kawamoto. (2016) Breeding and characterization of the rice (Oryza sativa L.) line “Akita 110” for cadmium phytoremediation. Soil Science and Plant Nutrition 62:4, pages 373-378.
Read now
Asif Naeem, Saifullah, Muhammad Zia-ur Rehman, Tasneem Akhtar, Yong Sik Ok & Zed Rengel. (2016) Genetic Variation in Cadmium Accumulation and Tolerance among Wheat Cultivars at the Seedling Stage. Communications in Soil Science and Plant Analysis 47:5, pages 554-562.
Read now
Peter Socha, Nirit Bernstein, Ĺubomír Rybanský, Patrik Mészáros, Terézia Gálusová, Nadine Spieß, Jana Libantová, Jana Moravčíková & Ildikó Matušíková. (2015) Cd accumulation potential as a marker for heavy metal tolerance in soybean. Israel Journal of Plant Sciences 62:3, pages 160-166.
Read now
Changfeng Ding, Taolin Zhang, Xingxiang Wang, Fen Zhou, Yiru Yang & Yunlong Yin. (2014) Effects of Soil Type and Genotype on Cadmium Accumulation by Rootstalk Crops: Implications for Phytomanagement. International Journal of Phytoremediation 16:10, pages 1018-1030.
Read now
Abin Sebastian & M.N. V. Prasad. (2013) Cadmium Accumulation Retard Activity of Functional Components of Photo Assimilation And Growth of Rice Cultivars Amended with Vermicompost. International Journal of Phytoremediation 15:10, pages 965-978.
Read now
Mariyo KATO, Satoru ISHIKAWA, Kazumi INAGAKI, Koichi CHIBA, Hiroaki HAYASHI, Shuichi YANAGISAWA & Tadakatsu YONEYAMA. (2010) Possible chemical forms of cadmium and varietal differences in cadmium concentrations in the phloem sap of rice plants (Oryza sativa L.). Soil Science and Plant Nutrition 56:6, pages 839-847.
Read now
A. Miura, E. Shiratani, K. Hamada, T. Hitomi & T. Kubota. (2010) Control of cadmium accumulation in topsoil and crops from contaminated farmland. Desalination and Water Treatment 19:1-3, pages 226-231.
Read now
Tadakatsu Yoneyama, Tadashi Gosho, Mariyo Kato, Shigeko Goto & Hiroaki Hayashi. (2010) Xylem and phloem transport of Cd, Zn and Fe into the grains of rice plants (Oryza sativa L.) grown in continuously flooded Cd-contaminated soil. Soil Science and Plant Nutrition 56:3, pages 445-453.
Read now
Tomohito Arao, Hiroyuki Takeda & Eiji Nishihara. (2008) Reduction of cadmium translocation from roots to shoots in eggplant (Solanum melongena) by grafting onto Solanum torvum rootstock. Soil Science and Plant Nutrition 54:4, pages 555-559.
Read now
Kensuke Tanaka, Shu Fujimaki, Toru Fujiwara, Tadakatsu Yoneyama & Hiroaki Hayashi. (2007) Quantitative estimation of the contribution of the phloem in cadmium transport to grains in rice plants (Oryza sativa L.). Soil Science and Plant Nutrition 53:1, pages 72-77.
Read now

Articles from other publishers (64)

Vimal Chandra Pandey, Gordana Gajic, Manhattan Lebrun & Pooja Mahajan. 2024. Designer Cropping Systems for Polluted Land. Designer Cropping Systems for Polluted Land 283 340 .
Wen-Juan Ni, Samavia Mubeen, Xiao-Min Leng, Chuntao He & Zhongyi Yang. (2023) Molecular-Assisted Breeding of Cadmium Pollution-Safe Cultivars. Journal of Agricultural and Food Chemistry.
Crossref
Yu Zhang, Yingming Xu, Xuefeng Liang, Lin Wang, Yuebing Sun, Qingqing Huang & Xu Qin. (2023) Ionomic analysis reveals the mechanism of mercaptosilane-modified palygorskite on reducing Cd transport from soil to wheat. Environmental Science and Pollution Research 30:43, pages 98091-98105.
Crossref
Thi Ngoc Dinh Nguyen, Khac Thi Vu, Thi Hang Nga Nguyen, Thi Phuong Nguyen, Nhat Khanh Pham, Thi Giang Nguyen, Mbaraka Saidi Rumanzi & Loc V. Nguyen. (2023) Effects of biochar and rice straw application on rice (Oryza Sativa L.) growth, yield, and cadmium accumulation in contaminated soil. Vegetos.
Crossref
Saglara Mandzhieva, Victor Chaplygin, Natalia Chernikova, Aleksey Fedorenko, Marina Voloshina, Tatiana Minkina, Vishnu D. Rajput, Maria Elinson & Ming Hung Wong. (2022) Responses of Spring Barley to Zn- and Cd-Induced Stress: Morphometric Analysis and Cytotoxicity Assay. Plants 11:23, pages 3332.
Crossref
Yongjin Li, Ying Zhang, Hongbing Luo, Dan Lv, Zhenxie Yi, Meijuan Duan & Min Deng. (2022) WGCNA Analysis Revealed the Hub Genes Related to Soil Cadmium Stress in Maize Kernel (Zea mays L.). Genes 13:11, pages 2130.
Crossref
Ryuichi Takahashi, Masashi Ito & Tomohiko Kawamoto. (2021) The Road to Practical Application of Cadmium Phytoremediation Using Rice. Plants 10:9, pages 1926.
Crossref
Gabrijel Ondrasek, Zed Rengel, Nada Maurović, Nada Kondres, Vilim Filipović, Radovan Savić, Boško Blagojević, Vjekoslav Tanaskovik, Cristian Meriño Gergichevich & Davor Romić. (2021) Growth and Element Uptake by Salt-Sensitive Crops under Combined NaCl and Cd Stresses. Plants 10:6, pages 1202.
Crossref
Yale Wang, Yingming Xu, Xuefeng Liang, Lin Wang, Yuebing Sun, Qingqing Huang, Xu Qin & Lijie Zhao. (2021) Soil application of manganese sulfate could reduce wheat Cd accumulation in Cd contaminated soil by the modulation of the key tissues and ionomic of wheat. Science of The Total Environment 770, pages 145328.
Crossref
Sha Zhang, Jing Song, Longhua Wu & Zheng Chen. (2021) Worldwide cadmium accumulation in soybean grains and feasibility of food production on contaminated calcareous soils. Environmental Pollution 269, pages 116153.
Crossref
M.J. McLaughlin, E. Smolders, F.J. Zhao, C. Grant & D. Montalvo. 2021. 1 129 .
Wan-Ting Chiao, Bo-Ching Chen, Chien-Hui Syu & Kai-Wei Juang. (2020) Aspects of cultivar variation in physiological traits related to Cd distribution in rice plants with a short-term stress. Botanical Studies 61:1.
Crossref
Patompong Saengwilai, Weeradej Meeinkuirt, Theerawut Phusantisampan & John Pichtel. (2019) Immobilization of Cadmium in Contaminated Soil Using Organic Amendments and Its Effects on Rice Growth Performance. Exposure and Health 12:2, pages 295-306.
Crossref
Souframanien Jegadeesan & Kangfu Yu. 2020. Legume Crops [Working Title]. Legume Crops [Working Title].
Ryuichi Takahashi, Masashi Ito, Kazunao Kato, Ikuko Kodama, Satoru Shibata, Kensuke Sato, Riyako Takahashi, Shinichi Matsumoto & Tomohiko Kawamoto. (2020) Breeding and characterization of the high cadmium-accumulating rice line ‘Akita 119’. Breeding Science 70:5, pages 631-636.
Crossref
Wan-Ting Chiao, Chun-Hui Yu & Kai-Wei Juang. (2019) The variation of rice cultivars in Cd toxicity and distribution of the seedlings and their root histochemical examination. Paddy and Water Environment 17:4, pages 605-618.
Crossref
Liangmei Chen, Wenge Wu, Fengxiang Han, Jiangxia Li, Wenling Ye, Huanhuan Fu, Yonghua Yan, Youhua Ma & Qiang Wang. (2019) Agronomic Management and Rice Varieties Controlling Cd Bioaccumulation in Rice. International Journal of Environmental Research and Public Health 16:13, pages 2376.
Crossref
Jie Zhan, Irena Twardowska, Siqi Wang, Shuhe Wei, Yanqiu Chen & Mihajlov Ljupco. (2019) Prospective sustainable production of safe food for growing population based on the soybean (Glycine max L. Merr.) crops under Cd soil contamination stress. Journal of Cleaner Production 212, pages 22-36.
Crossref
Wan-Ting Chiao, Chien-Hui Syu, Bo-Ching Chen & Kai-Wei Juang. (2019) Cadmium in rice grains from a field trial in relation to model parameters of Cd-toxicity and -absorption in rice seedlings. Ecotoxicology and Environmental Safety 169, pages 837-847.
Crossref
L.L. Hou, T. Tong, B. Tian & D.W. Xue. 2019. Cadmium Tolerance in Plants. Cadmium Tolerance in Plants 1 18 .
Wenguang Wang, Naoki Yamaji & Jian Feng Ma. 2019. Cadmium Toxicity. Cadmium Toxicity 115 124 .
Peng Wang, Bing Yang, Haibo Wan, Xiaolong Fang & Cunyi Yang. (2018) The differences of cell wall in roots between two contrasting soybean cultivars exposed to cadmium at young seedlings. Environmental Science and Pollution Research 25:29, pages 29705-29714.
Crossref
Lei Gao & Jie Xiong. 2018. Rice Crop - Current Developments. Rice Crop - Current Developments.
Elsayed A. Elkhatib, Fatma Sherif, Mahrous Kandil, Ahmed Mahdy, Mohamed Moharem & Abdulla A. Al-Basri. (2018) Using nanoparticles from water treatment residuals to reduce the mobility and phytoavailability of Cd and Pb in biosolid-amended soils. Environmental Geochemistry and Health 40:4, pages 1573-1584.
Crossref
Da-wei HU, Zhong-hua SHENG, Qian-long LI, Wei CHEN, Xiang-jin WEI, Li-hong XIE, Gui-ai JIAO, Gao-neng SHAO, Jian-long WANG, Shao-qing TANG & Pei-song HU. (2018) Identification of QTLs associated with cadmium concentration in rice grains. Journal of Integrative Agriculture 17:7, pages 1563-1573.
Crossref
Snehalata Majumdar, Bratati Chakraborty & Rita Kundu. (2018) Comparative analysis of cadmium-induced stress responses by the aromatic and non-aromatic rice genotypes of West Bengal. Environmental Science and Pollution Research 25:19, pages 18451-18461.
Crossref
Lunlin Chen, Heping Wan, Jiali Qian, Jianbin Guo, Chengming Sun, Jing Wen, Bin Yi, Chaozhi Ma, Jinxing Tu, Laiqiang Song, Tingdong Fu & Jinxiong Shen. (2018) Genome-Wide Association Study of Cadmium Accumulation at the Seedling Stage in Rapeseed (Brassica napus L.). Frontiers in Plant Science 9.
Crossref
Molla F. Mengist, Sheila Alves, Denis Griffin, Joanne Creedon, Mike J. McLaughlin, Peter W. Jones & Dan Milbourne. (2018) Genetic mapping of quantitative trait loci for tuber-cadmium and zinc concentration in potato reveals associations with maturity and both overlapping and independent components of genetic control. Theoretical and Applied Genetics 131:4, pages 929-945.
Crossref
Bo Wu, Shuhai Guo, Lingyan Zhang & Fengmei Li. (2018) Risk forewarning model for rice grain Cd pollution based on Bayes theory. Science of The Total Environment 618, pages 1343-1349.
Crossref
Pongsarun Rojjanateeranaj, Chirawee Sangthong & Benjaphorn Prapagdee. (2017) Enhanced cadmium phytoremediation of Glycine max L. through bioaugmentation of cadmium-resistant bacteria assisted by biostimulation. Chemosphere 185, pages 764-771.
Crossref
Zhongcai Xue & Huiyuan Gao. (2017) The Difference of Photosynthetic Responses to the Cadmium Stress Between a Wild Soybean (Glycine soja Sieb. et Zucc.) and a Cultivated Soybean. Bulletin of Environmental Contamination and Toxicology 99:3, pages 405-410.
Crossref
Xuemin Feng, Lei Han, Daiyin Chao, Yan Liu, Yajing Zhang, Ruigang Wang, Junkang Guo, Renwei Feng, Yingming Xu, Yongzhen Ding, Biyan Huang & Guilong Zhang. (2017) Ionomic and transcriptomic analysis provides new insight into the distribution and transport of cadmium and arsenic in rice. Journal of Hazardous Materials 331, pages 246-256.
Crossref
Lei Gao, Jiadong Chang, Ruijie Chen, Hubo Li, Hongfei Lu, Longxing Tao & Jie Xiong. (2016) Comparison on cellular mechanisms of iron and cadmium accumulation in rice: prospects for cultivating Fe-rich but Cd-free rice. Rice 9:1.
Crossref
Dongmei Liu, Huan Tang, Ying Zhao, Fuyi Cui & Jing Lu. (2016) Characterization of the adsorption behavior of aqueous cadmium on nanozero-valent iron based on orthogonal experiment and surface complexation modeling. Chinese Journal of Chemical Engineering 24:9, pages 1270-1274.
Crossref
Wesam A. AbuHammad, Sujan Mamidi, Ajay Kumar, Seyed Pirseyedi, Frank A. Manthey, Shahryar F. Kianian, Mohammed S. Alamri, Mohamed Mergoum & Elias M. Elias. (2016) Identification and validation of a major cadmium accumulation locus and closely associated SNP markers in North Dakota durum wheat cultivars. Molecular Breeding 36:8.
Crossref
Lin Tang, Weijun Luo, Shengke Tian, Zhenli He, Peter J. Stoffella & Xiaoe Yang. (2016) Genotypic differences in cadmium and nitrate co-accumulation among the Chinese cabbage genotypes under field conditions. Scientia Horticulturae 201, pages 92-100.
Crossref
Peng Wang, Xiaojuan Deng, Yian Huang, Xiaolong Fang, Jie Zhang, Haibo Wan & Cunyi Yang. (2015) Comparison of subcellular distribution and chemical forms of cadmium among four soybean cultivars at young seedlings. Environmental Science and Pollution Research 22:24, pages 19584-19595.
Crossref
Lin Wang, Yingming Xu, Yuebing Sun, Xuefeng Liang & Dasong Lin. (2014) Identification of pakchoi cultivars with low cadmium accumulation and soil factors that affect their cadmium uptake and translocation. Frontiers of Environmental Science & Engineering 8:6, pages 877-887.
Crossref
Jian-guo Liu, Peng Qu, Wen Zhang, Yan Dong, Ling Li & Ming-xin Wang. (2014) Variations among rice cultivars in subcellular distribution of Cd: The relationship between translocation and grain accumulation. Environmental and Experimental Botany 107, pages 25-31.
Crossref
Ryuichi Takahashi, Yasuhiro Ishimaru, Hugo Shimo, Khurram Bashir, Takeshi Senoura, Kazuhiko Sugimoto, Kazuko Ono, Nobuo Suzui, Naoki Kawachi, Satomi Ishii, Yong-Gen Yin, Shu Fujimaki, Masahiro Yano, Naoko K. Nishizawa & Hiromi Nakanishi. (2014) From Laboratory to Field: OsNRAMP5-Knockdown Rice Is a Promising Candidate for Cd Phytoremediation in Paddy Fields. PLoS ONE 9:6, pages e98816.
Crossref
Yong-Feng YanPuji LestariKyu-Jong LeeMoon Young KimSuk-Ha LeeByun-Woo Lee. (2013) Identification of quantitative trait loci for cadmium accumulation and distribution in rice ( Oryza sativa ) . Genome 56:4, pages 227-232.
Crossref
Satoru IshikawaYasuhiro IshimaruMasato IguraMasato KuramataTadashi AbeTakeshi SenouraYoshihiro HaseTomohito Arao, Naoko K. Nishizawa & Hiromi Nakanishi. (2012) Ion-beam irradiation, gene identification, and marker-assisted breeding in the development of low-cadmium rice. Proceedings of the National Academy of Sciences 109:47, pages 19166-19171.
Crossref
Xinxin Ye, Yibing Ma & Bo Sun. (2012) Influence of soil type and genotype on Cd bioavailability and uptake by rice and implications for food safety. Journal of Environmental Sciences 24:9, pages 1647-1654.
Crossref
Ye-Tao TANG, Teng-Hao-Bo DENG, Qi-Hang WU, Shi-Zhong WANG, Rong-Liang QIU, Ze-Bin WEI, Xiao-Fang GUO, Qi-Tang WU, Mei LEI, Tong-Bin CHEN, G. ECHEVARRIA, T. STERCKEMAN, M.O. SIMONNOT & J.L. MOREL. (2012) Designing Cropping Systems for Metal-Contaminated Sites: A Review. Pedosphere 22:4, pages 470-488.
Crossref
Noriko Yamaguchi, Satoru Ishikawa, Tadashi Abe, Koji Baba, Tomohito Arao & Yasuko Terada. (2012) Role of the node in controlling traffic of cadmium, zinc, and manganese in rice. Journal of Experimental Botany 63:7, pages 2729-2737.
Crossref
U. J. López-Chuken, U. López-Domínguez, R. Parra-Saldivar, E. Moreno-Jiménez, L. Hinojosa-Reyes, J. L. Guzmán-Mar & E. Olivares-Sáenz. (2011) Implications of chloride-enhanced cadmium uptake in saline agriculture: modeling cadmium uptake by maize and tobacco. International Journal of Environmental Science and Technology 9:1, pages 69-77.
Crossref
Ryuichi Takahashi, Yasuhiro Ishimaru, Takeshi Senoura, Hugo Shimo, Satoru Ishikawa, Tomohito Arao, Hiromi Nakanishi & Naoko K. Nishizawa. (2011) The OsNRAMP1 iron transporter is involved in Cd accumulation in rice. Journal of Experimental Botany 62:14, pages 4843-4850.
Crossref
FABIO FRANCESCO NOCITO, CLARISSA LANCILLI, BIANCA DENDENA, GIORGIO LUCCHINI & GIAN ATTILIO SACCHI. (2011) Cadmium retention in rice roots is influenced by cadmium availability, chelation and translocation. Plant, Cell & Environment 34:6, pages 994-1008.
Crossref
Bal Ram Singh, Satish K Gupta, Hassan Azaizeh, Stefan Shilev, Damien Sudre, Won Yong Song, Enrico Martinoia & Michel Mench. (2011) Safety of food crops on land contaminated with trace elements. Journal of the Science of Food and Agriculture 91:8, pages 1349-1366.
Crossref
Bruno Fernando Faria Pereira, Danilo Eduardo Rozane, Suzana Romeiro Araújo, Gabriel Barth, Rafaela Josemara Barbosa Queiroz, Thiago Assis Rodrigues Nogueira, Milton Ferreira Moraes, Cleusa Pereira Cabral, Antonio Enedi Boaretto & Eurípedes Malavolta. (2011) Cadmium availability and accumulation by lettuce and rice. Revista Brasileira de Ciência do Solo 35:2, pages 645-654.
Crossref
Megumi Sugiyama, Noriharu Ae & Makita Hajika. (2010) Developing of a simple method for screening soybean seedling cadmium accumulation to select soybean genotypes with low seed cadmium. Plant and Soil 341:1-2, pages 413-422.
Crossref
Eduardo R. Benitez, Makita Hajika, Tetsuya Yamada, Koji Takahashi, Nobuhiko Oki, Naohiro Yamada, Takehiro Nakamura & Kyohei Kanamaru. (2010) A Major QTL Controlling Seed Cadmium Accumulation in Soybean. Crop Science 50:5, pages 1728-1734.
Crossref
Tomohito Arao, Satoru Ishikawa, Masaharu Murakami, Kaoru Abe, Yuji Maejima & Tomoyuki Makino. (2010) Heavy metal contamination of agricultural soil and countermeasures in Japan. Paddy and Water Environment 8:3, pages 247-257.
Crossref
Souframanien Jegadeesan, Kangfu Yu, Vaino Poysa, Eugene Gawalko, Malcolm J. Morrison, Chun Shi & Elroy Cober. (2010) Mapping and validation of simple sequence repeat markers linked to a major gene controlling seed cadmium accumulation in soybean [Glycine max (L.) Merr]. Theoretical and Applied Genetics 121:2, pages 283-294.
Crossref
Kouichi Tezuka, Hidenori Miyadate, Kazunao Katou, Ikuko Kodama, Shinichi Matsumoto, Tomohiko Kawamoto, Satoshi Masaki, Hideki Satoh, Masayuki Yamaguchi, Kenji Sakurai, Hidekazu Takahashi, Namiko Satoh-Nagasawa, Akio Watanabe, Tatsuhito Fujimura & Hiromori Akagi. (2009) A single recessive gene controls cadmium translocation in the cadmium hyperaccumulating rice cultivar Cho-Ko-Koku. Theoretical and Applied Genetics 120:6, pages 1175-1182.
Crossref
Masato YAMAWAKI, Atsushi HIROSE, Satomi KANNO, Hiroki ISHIBASHI, Akihiko NODA, Keitaro TANOI & Tomoko M. NAKANISHI. (2010) Evaluation of 109Cd Detection Performance of a Real-Time RI Imaging System for Plant Research. RADIOISOTOPES 59:3, pages 155-162.
Crossref
Ippei Ogawa, Hiromi Nakanishi, Satoshi Mori & Naoko K. Nishizawa. (2009) Time course analysis of gene regulation under cadmium stress in rice. Plant and Soil 325:1-2, pages 97-108.
Crossref
Shimpei Uraguchi, Shinsuke Mori, Masato Kuramata, Akira Kawasaki, Tomohito Arao & Satoru Ishikawa. (2009) Root-to-shoot Cd translocation via the xylem is the major process determining shoot and grain cadmium accumulation in rice. Journal of Experimental Botany 60:9, pages 2677-2688.
Crossref
Shimpei Uraguchi, Masako Kiyono, Takuya Sakamoto, Izumi Watanabe & Katsuji Kuno. (2009) Contributions of apoplasmic cadmium accumulation, antioxidative enzymes and induction of phytochelatins in cadmium tolerance of the cadmium-accumulating cultivar of black oat (Avena strigosa Schreb.). Planta 230:2, pages 267-276.
Crossref
D. Ueno, I. Kono, K. Yokosho, T. Ando, M. Yano & J. F. Ma. (2009) A major quantitative trait locus controlling cadmium translocation in rice ( Oryza sativa ) . New Phytologist 182:3, pages 644-653.
Crossref
Masaharu Murakami & Noriharu Ae. (2009) Potential for phytoextraction of copper, lead, and zinc by rice (Oryza sativa L.), soybean (Glycine max [L.] Merr.), and maize (Zea mays L.). Journal of Hazardous Materials 162:2-3, pages 1185-1192.
Crossref
Tracy Shute & Sheila M. Macfie. (2006) Cadmium and zinc accumulation in soybean: A threat to food safety?. Science of The Total Environment 371:1-3, pages 63-73.
Crossref
Tomohito ARAO & Satoru ISHIKAWA. (2006) Genotypic Differences in Cadmium Concentration and Distribution of Soybean and Rice. Japan Agricultural Research Quarterly: JARQ 40:1, pages 21-30.
Crossref
yu zhang, Dasong Lin, Qingqing Huang, yunying peng, guohong Sun, Lin wang, yuebing sun, Xuefeng Liang & Xu qin. (2022) Mercaptosilane-Modified Palygorskite Decreases Uptake and Translocation of Cadmium in Alkaline Arable Soil-Wheat System. SSRN Electronic Journal.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.