...
首页> 外文期刊>Frontiers in Plant Science >The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici
【24h】

The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici

机译:<斜视> CACKIVI2 基因<斜视>辣椒的 L.赋予<斜视>植物>植物的热应激和感染抗性

获取原文
           

摘要

Extreme environmental conditions seriously affect crop growth and development, resulting in substantial reduction in yield and quality. However, chitin-binding proteins (CBP) family member CaChiVI2 plays a crucial role in eliminating the impact of adverse environmental conditions, such as cold and salt stress. Here, for the first time it was discovered that CaChiVI2 (Capana08g001237) gene of pepper ( Capsicum annuum L.) had a role in resistance to heat stress and physiological processes. The full-length open-reading frame (ORF) of CaChiVI2 (606-bp, encoding 201-amino acids), was cloned into TRV2: CaChiVI2 vector for silencing. The CaChiVI2 gene carries heat shock elements (HSE, AAAAAATTTC) in the upstream region, and thereby shows sensitivity to heat stress at the transcriptional level. The silencing effect of CaChiVI2 in pepper resulted in increased susceptibility to heat and Phytophthora capsici infection. This was evident from the severe symptoms on leaves, the increase in superoxide (O _(2) ~(–)) and hydrogen peroxide (H _(2)O _(2)) accumulation, higher malondialdehyde (MDA), relative electrolyte leakage (REL) and lower proline contents compared with control plants. Furthermore, the transcript level of other resistance responsive genes was also altered. In addition, the CaChiIV2 -overexpression in Arabidopsis thaliana showed mild heat and drought stress symptoms and increased transcript level of a defense-related gene ( AtHSA32 ), indicating its role in the co-regulation network of the plant. The CaChiVI2 -overexpressed plants also showed a decrease in MDA contents and an increase in antioxidant enzyme activity and proline accumulation. In conclusion, the results suggest that CaChiVI2 gene plays a decisive role in heat and drought stress tolerance, as well as, provides resistance against P. capsici by reducing the accumulation of reactive oxygen species (ROS) and modulating the expression of defense-related genes. The outcomes obtained here suggest that further studies should be conducted on plants adaptation mechanisms in variable environments.
机译:极端的环境条件严重影响作物生长和发展,导致产量和质量大幅下降。然而,几丁质结合蛋白(CBP)家族成员Cachivi2在消除不良环境条件的影响时起着至关重要的作用,例如冷和盐胁迫。这里,首次发现辣椒(Capana08G001237)辣椒(Capsicum Anumum L.)的基因在抗热应激和生理过程中具有作用。 Cachivi2的全长开放读数框架(ORF)(606-BP,编码201 - 氨基酸),克隆到TRV2:CACHIVI2载体以沉默。 Cachivi2基因在上游区域中携带热冲击元件(HSE,AAAAATTTC),从而显示对转录水平的热应力的敏感性。 CACHIVI2在辣椒中的沉默效果导致热量和植物脑膜炎剧情感应增加。这显然是从叶子上的严重症状,超氧化物的增加(O _(2)〜( - ))和过氧化氢(H _(2)O _(2))积累,高丙二醛(MDA),相对电解质与对照植物相比,泄漏(rel)和低脯氨酸含量。此外,还改变了其他抗性响应基因的转录物水平。此外,拟南芥的CACHIIV2 -overexpression显示出轻微的热量和干旱胁迫症状和增加的抗辩相关基因(ATHSA32)的转录水平,表明其在植物的共调节网络中的作用。 Cachivi2 -overex抑制的植物还显示MDA含量的降低和抗氧化酶活性和脯氨酸积累的增加。总之,结果表明,CACHivi2基因在热量和干旱胁迫耐受性中起决定性的作用,以及通过减少反应性氧物种(ROS)的积累并调节与防御相关基因的表达,提供对P. Capsici的抵抗力。这里获得的结果表明,应在可变环境中的植物适应机制上进行进一步的研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号